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芽孢杆菌属JR3酯酶LipJ:一种显示出曾经具有嗜热特性痕迹的新型嗜温酶。

Bacillus sp. JR3 esterase LipJ: A new mesophilic enzyme showing traces of a thermophilic past.

作者信息

Ribera Judit, Estupiñán Mónica, Fuentes Alba, Fillat Amanda, Martínez Josefina, Diaz Pilar

机构信息

Department of Genetics, Microbiology and Statistics, Faculty of Biology, University of Barcelona, Av. Diagonal 643, Barcelona, Spain.

Institute of Nanoscience and Nanotechnology (IN2UB), University of Barcelona, Av. Diagonal 643, Barcelona, Spain.

出版信息

PLoS One. 2017 Jul 25;12(7):e0181029. doi: 10.1371/journal.pone.0181029. eCollection 2017.

Abstract

A search for extremophile enzymes from ancient volcanic soils in El Hierro Island (Canary Islands, Spain) allowed isolation of a microbial sporulated strain collection from which several enzymatic activities were tested. Isolates were obtained after sample cultivation under several conditions of nutrient contents and temperature. Among the bacterial isolates, supernatants from the strain designated JR3 displayed high esterase activity at temperatures ranging from 30 to 100°C, suggesting the presence of at least a hyper-thermophilic extracellular lipase. Sequence alignment of known thermophilic lipases allowed design of degenerated consensus primers for amplification and cloning of the corresponding lipase, named LipJ. However, the cloned enzyme displayed maximum activity at 30°C and pH 7, showing a different profile from that observed in supernatants of the parental strain. Sequence analysis of the cloned protein showed a pentapeptide motif -GHSMG- distinct from that of thermophilic lipases, and much closer to that of esterases. Nevertheless, the 3D structural model of LipJ displayed the same folding as that of thermophilic lipases, suggesting a common evolutionary origin. A phylogenetic study confirmed this possibility, positioning LipJ as a new member of the thermophilic family of bacterial lipases I.5. However, LipJ clusters in a clade close but separated from that of Geobacillus sp. thermophilic lipases. Comprehensive analysis of the cloned enzyme suggests a common origin of LipJ and other bacterial thermophilic lipases, and highlights the most probable divergent evolutionary pathway followed by LipJ, which during the harsh past times would have probably been a thermophilic enzyme, having lost these properties when the environment changed to more benign conditions.

摘要

在西班牙加那利群岛耶罗岛的古老火山土壤中寻找嗜极酶,从而分离出一个微生物芽孢菌株库,并对其中几种酶活性进行了测试。在不同营养成分和温度条件下对样品进行培养后获得了分离菌株。在细菌分离物中,命名为JR3的菌株的上清液在30至100°C的温度范围内显示出高酯酶活性,这表明至少存在一种超嗜热细胞外脂肪酶。通过对已知嗜热脂肪酶进行序列比对,设计了简并共有引物,用于扩增和克隆相应的脂肪酶,命名为LipJ。然而,克隆的酶在30°C和pH 7时显示出最大活性,其活性谱与亲代菌株上清液中观察到的不同。对克隆蛋白的序列分析显示,其五肽基序-GHSMG-与嗜热脂肪酶不同,而与酯酶的基序更为接近。尽管如此,LipJ的三维结构模型显示出与嗜热脂肪酶相同的折叠方式,表明它们有共同的进化起源。系统发育研究证实了这种可能性,将LipJ定位为细菌脂肪酶I.5嗜热家族的一个新成员。然而,LipJ聚集在一个与嗜热栖热放线菌的嗜热脂肪酶相近但又分开的进化枝中。对克隆酶的综合分析表明,LipJ与其他细菌嗜热脂肪酶有共同的起源,并突出了LipJ最可能的分歧进化途径,即在过去恶劣的时期它可能是一种嗜热酶,当环境变为更温和的条件时失去了这些特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7dfc/5526573/5e7004c57a92/pone.0181029.g001.jpg

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